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首页> 外文期刊>Journal of Contaminant Hydrology >Unidirectional gas flow in soil porosity resulting from barometric pressure cycles
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Unidirectional gas flow in soil porosity resulting from barometric pressure cycles

机译:大气压力循环导致土壤孔隙中的单向气流

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摘要

During numerical simulation of air flow in the vadose zone, it was noticed that a small sinusoidal pressure would cause a gradual one-way migration of the pore gas. This was found to be a physical phenomenon, not a numerical artifact of the finite element simulation. The one-way migration occurs because the atmospheric pressure, and hence the air density, is slightly greater when air is flowing into the ground than when air is flowing out of the ground. A simple analytic theory of the phenomenon is presented, together with analytic calculations using actual barometric pressure data. In soil of one Darcy permeability, the one-way migration is of the order of a few tenths of a meter per year for either plane flow from ground surface or for radial flow from an open borehole. The migration is sufficiently small that it will have no practical consequences in most circumstances; however, investigators who conduct detailed numerical modeling should recognize that this phenomenon is not a numerical artifact in an apparently linear system.
机译:在渗流区内气流的数值模拟过程中,注意到小的正弦压力会引起孔隙气体的逐步单向迁移。发现这是一种物理现象,而不是有限元模拟的数字伪像。发生单向迁移的原因是,当空气流入地面时,大气压力和空气密度会略大于从地面流出时的气压。介绍了该现象的简单解析理论,并使用实际大气压数据进行了解析计算。在达西渗透率为1的土壤中,单向迁移每年来自地面的平面流或来自裸眼井眼的径向流大约为十分之一米。迁移量很小,在大多数情况下不会有任何实际后果;但是,进行详细的数值建模的研究人员应该认识到,这种现象在明显的线性系统中不是数值假象。

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